[0001] The invention relates to a pressing system, in particular for shaping powdered ceramic
materials of flat shape and, in particular but not solely, of large format.
[0002] Known presses consist of a welded or assembled structure to which there is coupled
a vertically mobile beam bearing a top mould portion, said mould having a respective
lower portion coupled to the bench body of the press.
[0003] Presses of assembled structure consist of a pair of walls connected by a pair of
tables assembled in such a way as to define a pressing compartment in which a mobile
mould punch is capable of closing onto a die-box containing the powders to be shaped.
[0004] Known ceramic presses can generate a pressing force of only up to 4,000 or 5,000
tonnes and are therefore unable to press ceramic slabs of surface area greater than
1 sqm.
[0005] Therefore, the problem arises of how to improve ceramic presses in order to make
possible, in particular, to improve their performances for pressing ceramic slabs
of surface area greater than 1 sqm. FR-A-345 819 describes a method for producing
a press including a frame body with vertically extended wells interconnected by connecting
means.
[0006] According to the invention, the posed problem is solved by a press having the features
of claim 1.
[0007] The invention allows for creation of a press with a modular structure, in other words
a press with a longitudinal dimension of the compartment that receives the pressing
means having a length that can be freely predetermined according to the surface area
of the material to be pressed.
[0008] The upper block and the lower block serve to distribute the load uniformly on the
walls during pressing.
[0009] It Is therefore preferable for each wall to be relatively close to the previous and/or
subsequent wall.
[0010] As a guideline, the walls can be a distance apart that is roughly equal to their
thickness.
[0011] In an other aspect of the Invention, there is provided a press comprising a frame
body to which there is coupled upper pressing means which interacts operatively with
lower pressing means In a pressing position in order to press a loose material between
them in such a way as to form a pressed product, wherein said lower pressing means
is coupled to actuating means capable of moving the lower pressing means from said
pressing position to an auxiliary position in which the lower pressing means can be
discharged of pressed product and loaded with further loose material to be pressed.
[0012] This aspect of the invention permits optimal loading of ceramic powders in the die-box
of a mould for ceramic tiles or for large-format ceramic slabs.
[0013] Furthermore, it is possible to increase productivity by using two die-boxes as the
lower pressing means and introducing them alternately below the same punch in the
same press. In fact, while one of the die-boxes is being loaded with the powders to
be pressed, the other can be positioned under the punch during the pressing stage.
[0014] The invention can be better understood and carried into effect by referring to the
attached drawings, which illustrate some versions of it and are intended purely as
non-limiting examples, in which:
Figure 1 is a front view of a press;
Figure 2 is a top view of the press shown in Figure 1;
Figure 3 is a fragmentary view taken along plane III-III in Figure 1;
Figure 4 is a sectional view taken along plane IV-IV in Figure 3 showing the hydraulic
jack actuating means;
Figure 5 is a sectional view taken along plane V-V in Figure 4;
Figure 6 is a sectional view like the one shown in Figure 4, but in a variant of the
hydraulic jack actuating means;
Figure 7 is a sectional view taken along plane VII-VII in Figure 6;
Figure 8 is a sectional view like the one shown in Figure 3, showing schematically
actuating means for moving a die-box capable of containing ceramic powder in and out
of the press;
Figure 9 is a schematic sectional view IX-IX shown in Figure 8;
Figure 10 is a sectional view like the one shown in Figure 8, but in a version with
two mobile die-boxes on opposite sides of the press;
Figure 11 is a schematic top view of the actuating means shown in Figure 10;
Figure 12 is a schematic view from the right of Figure 11, in which the extracting
means moves a pressed ceramic slab from the die-box and deposits it on a movement
line;
Figure 13 is a view like the one in Figure 12, but showing loading of the die-box
with powders to be pressed.
[0015] As shown in Figure 1, a press 1 for ceramic slabs or large-format ceramic tiles has
a frame body including walls 2, which are interconnected by way of two pairs of tie-rods
4 situated in respective holes in walls 2 below and above an opening 6 in each wall
2. Each wall 2 rests on a base frame 8 relative to which it is positioned by way of
a conventional alignment device 10.
[0016] The set of holes 6 in walls 2 forms a compartment that accommodates the pressing
means 12 comprising upper pressing means 14 and lower pressing means 16.
[0017] As shown in Figure 2, the walls 2 all have the same nominal thickness S and are positioned
at a distance D apart, substantially equal to the nominal thickness S. This way the
set of walls 2 is loaded uniformly when it has to withstand pressing loads.
[0018] In a specific case, the following relationship is found:

[0019] The upper pressing means 14 includes an upper block 18 which is fixed to walls 2
on the top edge of openings 6, and is interconnected with a punch body 20 by way of
vertical actuating means 22, including jacks 60 with rods 62 engaged in punch body
20 and arranged at the corners of upper block 18.
[0020] Between upper block 18 and punch body 20 there are interposed guide columns 30 which
slide in holes 32 (Figure 3) on upper block 18 and are capable of ensuring that the
punch body 20 moves downwards and upwards in a vertical plane.
[0021] The lower pressing means 16 includes a lower blocks 24 which is fixed to walls 2
on the lower edge of openings 6 and at the top has a pair of horizontal slide guides
26, coupled to respective lifting means 27. A die-box body 28 is slidingly engaged
on said sliding guides and is capable of receiving the punch body 20, in particular
a lower active surface 44 thereof, in an upper cavity 29 (Figure 3) on said die-box
body 28.
[0022] The lifting means 27 is able to move the die-box body 28 upwards when, at the end
of a pressing stage, said die-box body must be moved to a remote position relative
to punch 20 in order to allow pressed product to be removed and further powders for
pressing to be introduced into cavity 29; this aspect will be described in greater
detail below.
[0023] The set of walls 2 of the frame body of press 1 form a "sandwich" type structure
in which the walls 2 are maintained in pre-established positions relative to each
other by spacers 32 interposed between each wall 2 and the wall 2 immediately preceding
or following it.
[0024] Naturally, a "sandwich" type press structure as defined above can also be fitted
with conventional moulds, in particular with moulds that do not have parts that move
transversally relative to the direction of movement of the punch.
[0025] As shown schematically in Figure 3, spacers 32 are arranged in an external coaxial
fashion on tie-rods 4, which securely tighten walls 2 by way of ring nuts 34 which
engage with the ends of each tie-rod 4.
[0026] The upper block 18 is positioned on the top part of openings 6 by way of upper horizontal
pins 35 and is fixed to walls 2 by way of upper fixing screws 36 with interposed anti-friction
laminas 38.
[0027] A piston body 40 fixed to the bottom portion of block 18 by way of screws 39 penetrates,
and forms a seal with, a recess 42 in punch body 20. This way the punch body 20 serves
as the lining of a pressing hydraulic jack, the piston of which is the piston body
40 fixed to walls 2 in the manner described above.
[0028] The die-box body 28 includes an external frame body 46, which can be raised and lowered
by way of further vertical actuating means 50, consisting of hydraulic jacks, solidly
fixed to a base body 48 which extends upwards and is surrounded by an external frame
body 46 which can slide vertically on the upper portion of the base body in such a
way that, when the frame body 46 is completely raised, cavity 29 is formed between
the die body and an active upper surface 52 of the base body, whereas when the frame
body 46 is fully lowered, cavity 29 disappears and a product that has been formed
inside it can be removed.
[0029] The lower block 24 is positioned on and fixed to walls 2 by way of screws 54 and
horizontal pins 56 in a similar manner to the upper block 18.
[0030] The die-box body 28, in particular the lower part of the base body 48, rests on the
lower block 24 and can slide relative to it on the slideways 26; the die-box body
28 can be centred in a pressing position below punch 20 by way of centring means 58
consisting of lower conical projections of the base body 48 which can engage with
corresponding seats in the lower block 24.
[0031] As shown in Figure 4, the piston body 40 has a substantially rectangular shape with
radiused comers, in such a way as to extend substantially over the entire surface
of product P to be pressed, as defined by the cavity 29 when the die-box body 28 is
in the pressing position.
[0032] As shown in Figure 5, a sheet 64 of anti-friction material is interposed between
the piston body 40 and the upper block 18. Furthermore, alignment bushings 31 are
interposed between the guide columns 30 and the holes 32 on the upper block 18 in
which said guide columns slide.
[0033] Figure 6 shows a version of the upper pressing means which is similar to the version
described in Figures 4 and 5 but in which, instead of a single piston body 40, there
is a pair of piston bodies 40a arranged in such a way as to occupy a considerable
part of the surface in plan view of product P to be pressed.
[0034] As shown in Figure 7, the piston bodies 40a are received in respective recesses 42a
in punch body 20; during pressing, oil is sent into each of the recesses 42a at the
same pressure and flow rate, in order to ensure that the active face 44 of punch body
20 exerts a uniform pressure on the powders to be pressed.
[0035] Naturally, the "sandwich" structure of the press can also be equipped with a single
conventional piston of circular cross-section.
[0036] As shown in Figure 8, on one side of press 1 in a longitudinal direction X passing
through the compartment formed by the set of openings 6 in walls 2, there is situated
an auxiliary station 66 to which the die-box body 28 is moved to a waiting position
after pressing, as shown by the dashed line in the righthand section of Figure 8.
The lifting means 27 raises the die-box body 28 to free the centring means 58 until
the slideways 26 are aligned with sliding tracks 68 machined on a support structure
70 on waiting station 66.
[0037] On the die-box body 28, there is closed-loop chain transfer means 72 wound on wheels
free to rotate 76, which define a path with a neutral branch passing underneath the
base of the press 1.
[0038] On either side of the press 1, the wheels free to rotate 76 are coupled to geared
motors 78 in such a way that the die-box body 28 can be moved along direction X from
the pressing position to the waiting position and vice versa, making wheels 80, mounted
on the bottom of the die-box body 28, run along the slideways 26 and the sliding tracks
68.
[0039] Figure 9 shows the dashed outline of auxiliary means 81 which acts on the die-box
body 28 as explained below, when said die-box body is in the waiting position.
[0040] As shown in Figure 10, to increase productivity it is possible to have two auxiliary
stations 66 and 66a located on opposite sides relative to press 1, consisting of analogous
parts to those making up auxiliary station 66 and therefore designated with the same
reference numbers. However, unlike the version referred to in Figures 8 and 9, instead
of a single die-box body 28, there are two die-box bodies 28 interconnected by the
chain connecting means 72. They are positioned in such a way that when one die-box
body 28 is in the pressing position, the other is in the waiting position in auxiliary
station 66, whereas when this second die-box body moves to the pressing position inside
the press, the first die-box body moves to the waiting position in auxiliary station
66a. This way, while one die-box body undergoes the action of the punch body 20, the
other is disengaged from the press 1 and can be discharged of product P and loaded
with further powdered material to be pressed.
[0041] Figure 11 shows the dashed outline of auxiliary means 81 which acts on die-box body
28 as explained below, when it is in the waiting position relative to auxiliary station
66a.
[0042] As shown in Figure 12, when the die-box body 28 reaches the auxiliary station 66
or 66a, the frame 46 is lowered by the vertical actuating means 50 so as to free the
pressed product P on the surface of the base body 48. The auxiliary means 81 includes
transversal guide means 82, positioned transversally relative to direction X and on
which a suction-cup pick-up means 84 is slidingly engaged. Said suction-cup pick-up
means moves vertically on a pair of columns 86 by way of transfer means 88 and is
capable of picking up pressed product P from die-box body 28, then raising said pressed
product P from said die-box body and transferring it to a conveyor line 90 equipped
with a motor-driven roller conveyor.
[0043] After the die-box body 28 has been freed from pressed product P, the frame 46 is
once again raised in such a way as to form cavity 29, as shown in Figure 13, and hopper
means 92 containing powders to be pressed is moved in such a way that a lower discharge
outlet 94 controlled by shutter means 96 can introduce the powders to be pressed into
cavity 29. Once cavity 29 has been filled, the hopper means 92 is moved to a rest
position where it receives further powder from a feeder belt 98.
1. A press, including a frame body with vertically extending walls (2) Interconnected
by connecting means (4, 32, 34) and provided with openings (6) that together define
a pressing compartment of adequate size to contain upper pressing means (14) and lower
pressing means (16), an upper portion of said compartment being occupied by upper
block means (18) which is stably coupled to the upper parts of said openings (6) and
to which said upper pressing means (14) is fixed, a lower portion of said compartment
being occupied by lower block means (24), which is stably coupled to the lower parts
of said openings (6) and to which said lower pressing means (16) is fixed, characterised in that said walls (2) are close to the previous and the following one and are separated
from the previous and following walls by a distance (D) that substantially corresponds
to the nominal thickness (S) of each wall (2).
2. Press according to claim 1, wherein piston means (40; 40a) of said upper pressing
means (14) is fixed to said upper block (18).
3. Press according to claim 2, wherein said piston means (40) forms a single bodies whose
cross-section is of a size corresponding substantially to the surface area to be pressed.
4. Press according to one of claims 1 to 3, wherein said piston means (40a) is divided
into individual piston bodies whose overall cross-section is of a size corresponding
substantially to the surface area to be pressed.
5. Press according to one of claims 2 to 4, wherein said upper pressing means (14) includes
a punch body (20) provided with recess means (42; 42a) to receive said piston means
(40; 40a) and coupled in such a way as to move in a guided manner relative to said
upper block means (18).
6. Press according to one of the previous claims, wherein said lower pressing means (16)
is coupled to said lower block means (24) in such a way as to be disengageable in
a vertical direction.
7. Press according claim 6, wherein said lower pressing means (16) is provided with centring
means (58) on said lower block means (24).
8. Press according to one of claims 6 or 7, wherein said lower pressing means (16) includes
a base body (48) peripherally engaged by frame means (46) which can be moved in a
vertical direction relative to said base body (48) in such a way as to define a pressing
cavity (29).
9. Press according to one of claims 6 to 8, wherein said lower pressing means (16) is
coupled to horizontal actuating means (72, 76, 78) capable of moving the lower pressing
means (16) from a pressing position in which said lower pressing means (16) can interact
with said upper pressing means (14) to an auxiliary position (66) in which the lower
pressing means (16) can be discharged of pressed product and loaded with loose material
to be pressed.
10. Press according to claim 9, wherein said lower pressing means (16) includes a die-box
body (28) and said auxiliary position is on one side of the press (1).
11. Press according to claim 9, wherein said lower pressing means (16) includes two separate
die-box means (28), each of which has an auxiliary position on its respective side
of the press (1).
12. Press according to one of claims 9 to 11, wherein said actuating means (72, 76, 78)
is a flexible actuating means.
1. Presse, umfassend einen Rahmenkörper mit vertikal verlaufenden Wänden (2), die durch
Verbindungsmittel (4, 32, 34) miteinander verbunden und mit Öffnungen (8) versehen
sind, die insgesamt einen Pressraum von ausreichender Größe bestimmen, um obere Pressmittel
(14) und untere Pressmittel (15) aufzunehmen, wobei ein oberer Abschnitt des besagten
Raums von oberen Blockierungsmitteln (18) eingenommen wird, die fest an die oberen
Teile der benannten Öffnungen (6) angekoppelt sind und an denen die besagten oberen
Pressmittel (14) befestigt sind, wobei ein unteren Abschnitt des besagten Raums von
unteren Blockierungsmitteln (24) eingenommen wird, die fest an die unteren Teile der
besagten Öffnungen (6) angekoppelt sind und an denen die besagten unteren Pressmittel
(16) befestigt sind, dadurch gekennzeichnet, dass die besagten Wände (2) nah an der vorhergehenden und der nachfolgenden Wand angeordnet
und von den vorhergehenden und nachfolgenden Wänden in einem Abstand (D) getrennt
sind, der im Wesentlichen der Nominalstärke (S) jeder Wand (2) entspricht.
2. Presse nach Anspruch 1, in der die Kolbenmittel (40; 40a) der besagten oberen Pressmittel
(14) an der besagten oberen Blockierung (18) befestigt sind.
3. Presse nach Anspruch 2, in der die besagten Kolbenmittel (40) einen einzigen Körper
bilden, dessen Querschnitt in seiner Größe im Wesentlichen der zu pressenden Oberfläche
entspricht.
4. Presse nach einem der Ansprüche 1 bis 3, in der die besagten Kolbenmittel (40a) in
einzelne Kolbenkörper unterteilt sind, deren gesamter Querschnitt in seiner Größe
im Wesentlichen der zu pressenden Oberfläche entspricht.
5. Presse nach einem der Ansprüche 2 bis 4, in der die besagten oberen Pressmittel (14)
einen Stempelkörper (20) enthalten, der mit Vertiefungsmitteln (42, 42a) zur Aufnahme
der besagten Kolbenmittel (40, 40a) ausgestattet und so angekoppelt ist, dass er sich
in geführter Weise gegenüber den besagten oberen Blockierungsmitteln (18) bewegt.
6. Presse nach einem der vorhergehenden Ansprüche, in der die besagten unteren Pressmittel
(16) in solcher Weise an die besagten unteren Blockierungsmittel (24) angekoppelt
sind, sodass sie in senkrechter Richtung ausklinkbar sind.
7. Presse nach Anspruch 6, in der die besagten unteren Pressmittel (16) mit Zentrierungsmitteln
(58) auf den besagten unteren Blockierungsmitteln ausgestattet sind.
8. Presse nach einem der Ansprüche 6 bis 7, in der die besagten unteren Pressmittel (16)
einen Basiskörper (46) beinhalten, der auf seinem Umfang von Rahmenmitteln (48) eingenommen
wird, die in senkrechter Richtung gegenüber dem besagten Basiskörper (46) in solcher
Weise bewegt werden können, dass sie einen Press-Hohlraum bestimmen.
9. Presse nach einem der Ansprüche 6 bis 8, in der die besagten unteren Pressmittel (16)
an waagrechte Betätigungsmittel (72, 76, 78) angekoppelt sind, die geeignet sind,
die unteren Pressmittel (16) von einer Pressposition, in der die besagten unteren
Pressmittel (16) mit den besagten oberen Pressmitteln (14) interagieren können, in
eine Hilfsposition (66) zu bewegen, in der die unteren Pressmittel (16) vom gepressten
Produkt entladen werden und mit zu pressendem losem Material beladen werden können.
10. Presse nach Anspruch 9, in der die besagten unteren Pressmittel (16) einen Pressform-Körper
(28) enthalten und die besagte Hilfsposition sich auf einer Seite der Presse befindet.
11. Presse nach Anspruch 9, in der die besagten unteren Pressmittel (16) zwei getrennte
Pressform-Mittel (28) enthält, von denen jedes eine Hilfsposition auf der jeweiligen
Seite der Presse besitzt.
12. Presse nach einem der Ansprüche 9 bis 11, in der die besagten Betätigungsmittel (72,
76, 78) flexible Betätigungsmittel sind.
1. Presse, comprenant un corps de châssis ayant des parois s'étendant verticalement (2),
reliées entre elles par des dispositifs de connexion (4, 32, 34) et équipées d'ouvertures
(6) qui forment ensemble un compartiment de pression ayant des dimensions permettant
d'y loger des moyens de pression supérieurs (14) et des moyens de pression inférieurs
(16), une partie supérieure dudit compartiment étant occupée par des moyens à bloc
supérieurs (18), lesquels sont accouplés de manière stable aux parties supérieures
desdites ouvertures (6) et auxquels sont fixés lesdits moyens de pression supérieurs
(14), une partie inférieure dudit compartiment étant occupée par des moyens à bloc
inférieurs (24), qui sont accouplés de manière stable aux parties inférieures desdites
ouvertures (6) et auxquels sont fixés lesdits moyens de pression inférieurs (16),
caractérisé en ce que lesdites parois (2) se trouvent à proximité de la précédente et de la suivante et
sont séparées des parois précédentes et suivantes par une distance (D) qui correspond
substantiellement à l'épaisseur (S) nominale de chaque paroi (2).
2. Presse selon la revendication 1, dans laquelle les moyens à piston (40 ; 40 a) desdits
moyens de pression supérieurs (14) sont fixés au bloc supérieur susmentionné (18).
3. Presse selon la revendication 2, dans laquelle lesdits moyens à piston (40) forment
un corps unique qui présente une section transversale ayant une dimension qui correspond
substantiellement à la surface devant être pressée.
4. Presse selon une des revendications de 1 à 3, dans laquelle lesdits moyens à piston
(40a) sont divisés en corps de piston individuel qui présentent une section transversale
d'ensemble ayant une dimension qui correspond substantiellement à la surface devant
être pressée.
5. Presse selon une des revendications de 2 à 4, dans laquelle lesdits moyens de pression
supérieurs (14) comprennent un corps à poinçon (20) équipés de moyens à récession
(42 ; 42a) pour recevoir lesdits moyens à piston (40 ; 40a) et accouplé de manière
à se déplacer de manière guidée par rapport aux dits moyens de blocage supérieurs
(18).
6. Presse selon l'une des revendications précédentes, dans laquelle lesdits moyens de
pression (16) sont accouplés aux dits moyens à bloc inférieurs (24) de manière à pouvoir
être désengagés dans une direction verticale.
7. Presse selon la revendication 6, dans laquelle lesdits moyens de pression (18) sont
équipés de moyens de centrage (58) sur lesdits moyens à bloc inférieurs (24).
8. Presse selon l'une des revendications 6 ou 7, dans laquelle lesdits moyens de pression
inférieurs (16) comprennent un corps de base (48) engagé de manière périphérique par
des moyens à cadre (48) qui peuvent être déplacés dans une direction verticale par
rapport audit corps de base (48) de manière à définir une cavité de pression (29).
9. Presse selon l'une des revendications de 6 à 8, dans laquelle lesdits moyens de pression
inférieurs (16) sont accouplés à des moyens d'actionnement horizontaux (72,76, 78)
en mesure de déplacer les moyens de pression inférieurs (16) d'une position de pressage
dans laquelle lesdits moyens de pression inférieurs (16) peuvent entrer en interaction
avec lesdits moyens de pression supérieurs (14) vers une position auxiliaire (66)
dans laquelle les moyens de pression inférieurs (16) peuvent être déchargés du produit
pressé et chargés avec le matériel en vrac devant être pressé.
10. Presse selon la revendication 9, dans laquelle lesdits moyens de pression inférieurs
(16) comprennent un corps de matrice (28) et ladite position auxiliaire est prévue
sur un des côtés de la presse (1).
11. Presse conformément à la revendication 9, dans laquelle lesdits moyens de pression
inférieurs (16) comprennent deux corps de matrice séparés (28), une position auxiliaire
sur le côté de la presse (1) étant prévue pour chacun d'entre eux.
12. Presse selon l'une des revendications de 9 à 11, dans laquelle lesdits moyens d'actionnement
(72, 76, 78) sont des moyens d'actionnement flexibles.